SIMBAD references

2013ApJ...779...28G - Astrophys. J., 779, 28 (2013/December-2)

Delayed energy injection model for gamma-ray burst afterglows.

GENG J.J., WU X.F., HUANG Y.F. and YU Y.B.

Abstract (from CDS):

The shallow decay phase and flares in the afterglows of gamma-ray bursts (GRBs) are widely believed to be associated with the later activation of the central engine. Some models of energy injection involve a continuous energy flow since the GRB trigger time, such as the magnetic dipole radiation from a magnetar. However, in the scenario involving a black hole accretion system, the energy flow from the fall-back accretion may be delayed for a fall-back time ∼tfb. Thus, we propose a delayed energy injection model. The delayed energy would cause a notable rise to the Lorentz factor of the external shock, which will "generate" a bump in the multiple band afterglows. If the delayed time is very short, our model degenerates to the previous models. Our model can explain the significant re-brightening in the optical and infrared light curves of GRB 081029 and GRB 100621A. A considerable fall-back mass is needed to provide the later energy; this indicates that GRBs accompanied with fall-back material may be associated with a low energy supernova so that the fraction of the envelope can survive during eruption. The fall-back time can give meaningful information on the properties of GRB progenitor stars.

Abstract Copyright:

Journal keyword(s): accretion, accretion disks - gamma-ray burst: individual (081029, 100621A) - methods: numerical

Simbad objects: 6

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